Shamrock 163 Spectrograph - 300 lpmm 300nm Blaze

Specifications

Monochromator Type: Czerny-Turner
Effective Focal Length: 163 mm
Diffraction Grating: 300 lines/mm
Grating Blaze Wavelength: 300 nm
Spectral Range: 200 – 800 nm
Linear Dispersion (Avg): 19.33 nm/mm
Spectral Resolution (Avg): 1.16 nm
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Features


  • Compact & Rugged Design: The Shamrock 163 offers both horizontal and vertical mounting positions, ensuring portability and ease of integration.

  • Imaging-Configurable Platform: Ideal for multi-track spectroscopy, this spectrograph features lens-based accessories that optimize system performance for low cross-talk and simultaneous multi-leg fibre signal acquisition.

  • Interchangeable Gratings: A wide range of gratings with a simple precision locking mechanism allows for seamless upgradability.

  • Variety of Fixed Slits: Includes interchangeable laser-cut precision slits with widths ranging from 10 µm to 200 μm, catering to diverse experimental needs.

  • Versatile Light Coupling Interfaces: Offers a large choice of interfaces, including fibre-optics and C-mount microscope couplers.

  • Calibrated Micrometer Drive: Facilitates simple and rapid wavelength adjustment for precise measurements.

  • High Resolution: Achieves resolutions of 0.25 nm with 1200 l/mm @ 500 nm and 0.12 nm with 2400 l/mm @ 300 nm using the Newton DU940 CCD.

  • Compact Size: With dimensions of 198 x 216 x 96 mm (7.8 x 8.5 x 3.8 in) and a weight of 3.5 kg (7.71 lb), it is the most compact research-grade Czerny-Turner spectrograph available.

  • Customizable System Configuration: Offers step-by-step customization with options for chassis configuration, resolution & band-pass, and input light coupling interface.

Applications


  • General Benchtop Spectroscopy: Ideal for high-resolution spectral measurements in research labs.

  • Multi-Leg Fiber Signal Acquisition: Enables simultaneous monitoring of multiple signals with low crosstalk.

  • Raman Spectroscopy: Suitable for precise Raman shift analyses across varying wavelengths.

  • Fluorescence Spectroscopy: Optimized for fluorescence emission studies with minimal optical aberration.

  • Laser Characterization: Accurate for spectral characterization of laser outputs in development and QA.

  • Educational and Training Laboratories: Compact, reliable platform for teaching advanced spectroscopy techniques.